Issue 69, 2015

Synthesis and photophysical properties of phthalocyanines having calixpyrrole units

Abstract

Zn2+ and Co2+ metallated phthalocyanines having four calixpyrrole units have been prepared from a calixpyrrole phthalonitrile using Zn2+ or Co2+ salts as templates of a phthalocyanine macrocycle. Host–guest complexes between the anions (Cl, F and H2PO4) and the calixpyrrole units are formed as evidenced by NMR, the shift in the reduction potential of the calixpyrrole units by cyclic voltammetry and by observation of two straight lines in the plot of the conductivity versus the amount of halide. While halides do not form complexes with Zn2+ or Co2+ ions of the phthalocyanine core in the ground state as evidenced by the lack of variation in the position of the Q-band in optical spectroscopy, upon 355 nm excitation, the apical metal–halide complex should be formed as a transient as evidenced by the comparison of the transient absorption spectra in the presence and absence of halides.

Graphical abstract: Synthesis and photophysical properties of phthalocyanines having calixpyrrole units

Article information

Article type
Paper
Submitted
01 Apr 2015
Accepted
19 Jun 2015
First published
19 Jun 2015

RSC Adv., 2015,5, 55901-55908

Synthesis and photophysical properties of phthalocyanines having calixpyrrole units

Z. N. Erol, P. Atienzar, Y. Arslanoğlu, E. Hamuryudan and H. García, RSC Adv., 2015, 5, 55901 DOI: 10.1039/C5RA05830A

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